This application claims benefit to Chinese Patent Application for a volute for a centrifugal fan, 201810418925.6, filed on May 4, 2018. The specification of the application is incorporated here by this reference.
The present invention relates to the technical field of range hoods, and in particular to a volute for a centrifugal fan.
For domestic range hoods, air suction and air exhaust are performed by multi-blade centrifugal fans. A fan generally consists of a volute, a motor, an impeller and the like. A tongue-like protrusion in the volute is called a volute tongue which mainly functions to isolate the flowing gas and prevent the gas from circulating in the volute. Due to the high pressure and complicated flow of gas in the vicinity of the volute tongue, the flow noise and rotation noise generated in the vicinity of the volute tongue are the main noise sources of the centrifugal fan. Therefore, reducing the noise in the vicinity of the volute tongue can significantly reduce the noise of the range hood.
Chinese Patent Application CN105526193A (Appl. No. CN201610111243.1) entitled FAN VOLUTE FOR RANGE HOOD disclosed a kind of structure of volute, including a volute tongue, wherein the volute tongue includes an inner wall of the volute tongue; the volute tongue forms an noise-reducing chamber; at least one longitudinal partition plate is arranged within the chamber in an axial direction of the volute, and a plurality of radial partition plates are arranged within the chamber in a direction perpendicular to the axis of the volute; the chamber is divided into a plurality of independent enclosed silence cavities by the longitudinal partition plate and the radial partition plates; and, a hole is formed on the inner wall of the volute tongue corresponding to each silence chamber. In the above structure, the chamber in the volute tongue is divided into a plurality of independent small enclosed cavities, and a Helmholtz resonator is formed by the small cavities and the holes formed on the corresponding sidewall. In accordance with the Helmholtz resonance principle, after the sound is transmitted, the sound waves close to the inherent frequency of the resonator resonate with the resonator. During vibration, air columns in the chamber rub against the inner wall of the chamber to consume the sound energy, realizing sound adsorption and noise reduction.
In the above structure, by providing the silence cavities, the noise of the fan is reduced to a certain extent. However, due to the small space at the volute tongue, it is difficult to completely discharge the gas at one time, and the residual gas is easy to flow back and form vortex. Consequently, the fan efficiency is reduced, and the vortex noise is generated, so that the fan still has high noise.
A technical problem to be solved by the present invention is, in view of the prior art, to provide a volute for a centrifugal fan, which reduces the fan noise and improves the fan efficiency by eliminating vortex through active noise reduction.
To solve the above technical problem, the volute for a centrifugal fan comprises a volute tongue having an inner wall, wherein the volute tongue has an enclosed noise-reducing chamber, the volute tongue has a plurality of holes on the inner wall for allowing the air flow to enter into the noise-reducing chamber; and a sound collector capable of detecting the intensity of noise and a speaker capable of playing sound are disposed in the noise-reducing chamber.
Preferably, volute tongue side plates are respectively disposed on each side of the volute tongue; a rear plate is disposed on an outer side of the volute tongue; the noise-reducing chamber is enclosed by the rear plate, the two volute tongue side plates and the outer wall of the volute tongue; and, the sound collector and the speaker are arranged facing the rear plate. This structure is advantageous for realizing better noise cancellation.
As an improvement, a baffle having an upper portion and a lower portion extending inward along the outer wall of the volute tongue is disposed inside the noise-reducing chamber; a narrow air-guiding passage is formed between the upper portion of the baffle and the corresponding outer wall of the volute tongue; the volute further comprises an air outlet, the top the air-guiding passage is in communication with the air outlet; an air-guiding chamber is enclosed by the lower portion of the baffle and the outer wall of the volute tongue; and, an opening for allowing the air flow to enter into the air-guiding chamber is formed on a bottom of the volute tongue. Preferably, a silence chamber is enclosed by the baffle and the rear plate, the baffle has a plurality of through holes for allowing the air flow from the air-guiding chamber into the silence chamber, and both the sound collector and the speaker are disposed on the baffle and located inside the silence chamber. This structure can effectively reduce gas backflow and eliminate vortex.
As a further improvement, a movable air-guiding block with a first end and a second end for removably covering the opening, is disposed inside the air-guiding chamber, and an adjustment component for controlling the air-guiding block to cover or uncover the opening according to the intensity of the air flow is disposed on the volute tongue. With such a structure, when the air volume is relatively small, the adjustment component does not work, and the conventional structure of the volute tongue can satisfy the requirements; and, when the air volume is relatively large, the adjustment component drives, under the impact of the air flow, the air-guiding block to move so as to open the opening, so that the function of eliminating vortex and reducing gas backflow is realized.
Preferably, the adjustment component comprises two pairs of connecting arms, pins and elastic members; each connecting arm is connected to the first end of the air-guiding block and rotatably connected to volute tongue side plate through one pin; the air-guiding block rotates around the pins and floats upwardly under the impact of the air flow so as to uncover the opening, the second end of the air-guiding block is a free movable end; and, the elastic member pushes the air-guiding block to be kept in a trend to cover the opening. The elastic coefficient of the elastic member can be set according to specific performance parameters such as the air pressure of the fan system and the flow. Thus, it is determined, according to the air volume, whether the opening is to be closed, to maintain the low noise of the fan.
For assembly convenience, the elastic member is a spring, the first end and the second end of the elastic member respectively resist against the top of the corresponding connecting arm and the inner wall above the elastic member. Preferably, the volute tongue has a resisting plane arranged perpendicularly to an axial direction of the spring and is formed on the inner wall above the elastic member, and the second end of the elastic member rests against the resisting plane; and, a recess for receiving the first end of the spring is formed on the top surface of each connecting arm.
Preferably, the baffle has a thickness of 1.5 mm and 2 mm, and the through holes have a diameter of 2.3 mm and 3.2 mm.
In the above solutions, the volute further comprises an annular volute wall with a first end and a second end, the volute tongue is connected to the first end of the annular volute wall; the inner wall of the volute tongue comprises a first cambered section, a second cambered section and a first planar section; the first cambered section is arranged close to an impeller of the centrifugal fan compared to the first planar section, and the bottom surface of the first cambered section serves as a first air-guiding surface of the centrifugal fan; the first planar section is arranged on the air outlet side of the volute, and its inner surface of the first planar section serves as a second air-guiding surface of the centrifugal fan; the second cambered section is connected between the first cambered section and the first planar section.
For ease of connection, the volute further comprises a front cover plate and a rear cover plate, the annular volute wall is connected between the front cover plate and the rear cover plate; an upper edge of the volute tongue is connected to an inner wall of the front cover plate and the rear cover plate, and a lower edge of the volute tongue is connected to the first end oft the annular volute wall and sealed with each other by silicone.
Preferably, the baffle comprises a second planar section and a third cambered section; the second planar section is arranged close to the first planar section; a top of the third cambered section is connected to a bottom of the second planar section; and, the third cambered section is arched toward the second cambered section, and a bottom of the third cambered section is connected to an upper surface of the first cambered section. The interval at the top of the air-guiding passage between the first planar section and the second planar section, is smaller than that of the bottom of the air-guiding passage. With the above structure, an approximately 6-shaped structure is formed by the air-guiding chamber and the long and narrow air-guiding passage, so that good effects of guiding flow and eliminating vortex are achieved.
Preferably, the bottom surface of the air-guiding block is a cambered surface protruding downward, and correspondingly, each wall of the opening is a cambered surface matching with the bottom surface of the air-guiding block. The top surface of the air-guiding block is a chambered surface protruding upward, the radian of the top surface is greater than that of bottom surface of the air-guiding block, and the connecting portion between the top surface and the bottom surface is smooth. With the above structure, the resistance to the air flow from the air-guiding block can be reduced.
Compared with the prior art, the present invention has the following advantages. Since the volute tongue in the present invention has an enclosed noise-reducing chamber, during the use of the centrifugal fan, a gas flow can enter the chamber through the holes on the inner wall of the volute tongue. The sound collector in the chamber can acquire a noise signal and transmit it to a controller, and the controller calculates a noise-reduced audio signal according to the acquired signal and then controls the speaker to play the corresponding reduced noise according to the noise-reduced audio signal, so that the active noise reduction is realized. With such a structure, the vortex at the volute tongue is eliminated, thus the fan noise is reduced and the fan efficiency is improved.
To enable a further understanding of the present invention content of the invention herein, refer to the detailed description of the invention and the accompanying drawings below:
As shown in
In this embodiment, the volute tongue 1 has an inner wall 11. The inner wall 11 of the volute tongue comprises a first cambered section 111, a second cambered section 112 and a first planar section 113. The first cambered section 111 is arranged close to an impeller of the centrifugal fan compared to the first planar section 113, and the bottom surface of the first cambered section 111 serves as a first air-guiding surface of the centrifugal fan. The first planar section 113 is arranged on the air outlet 40 side of the volute, and the inner surface of the first planar section 113 serves as a second air-guiding surface of the centrifugal fan. The second cambered section 112 is connected between the first cambered section 111 and the first planar section 113. In this embodiment, an upper edge of the volute tongue 1 is connected to upper edges of the front cover plate 2 and the rear cover plate 3 through screws, and a lower edge of the volute tongue 1 is connected to an edge of the first end of the annular volute wall 4 through a screw and sealed by silicone.
In this embodiment, the volute tongue 1 has an enclosed noise-reducing chamber 10. The volute tongue 1 has a plurality of holes 110 on the inner wall 11 for allowing the air flow to enter into the noise-reducing chamber 10. A sound collector 5 capable of detecting the intensity of noise and a speaker 6 capable of playing sound are disposed in the noise-reducing chamber 10. A corresponding controller is further disposed on the volute. The controller is connected to the sound collector 5 and the speaker 6 by an electrical signal. A noise signal acquired by the sound collector 5 is transmitted to the controller, and the controller calculates the required noise-reduced audio signal according to the noise signal and controls the speaker 6 to play the corresponding reduced noise, so as the noise reduction is realized. In this embodiment, two volute tongue side plates 12 are respectively disposed on each side of the volute tongue. A rear plate 17 is disposed at an outer side of the volute tongue 1. The noise-reducing chamber 10 is enclosed by the rear plate 17, the two volute tongue side plates 12 and the outer wall of the volute tongue. The sound collector 5 and the speaker 6 are arranged facing the rear plate 17, so it is advantageous for noise cancellation.
As shown in
In this embodiment, a movable air-guiding block 100 with a first end and a second end for removably covering the opening 1111, is disposed inside the air-guiding chamber 15, and an adjustment component 16 for controlling the air-guiding block 100 to cover or uncover the opening 1111 according to the intensity of the air flow is disposed on the volute tongue 1. The adjustment component 16 comprises two pairs of connecting arms 161, pins 162 and elastic members 163. Each connecting arm 161 is connected to the first end of the air-guiding block 100. The other end of each connecting arm 161 is rotatably connected to the volute tongue side plate 12 through the pin 162, and the junction is close to the second cambered section 112. The air-guiding block 100 rotates around the pins 162 and floats upwardly under the impact of the air flow so as to uncover the opening 1111, the second end of the air-guiding block 100 is a free movable end. The elastic member 163 pushes the air-guiding block 100 to be kept in a trend to cover the opening 1111. The elastic coefficient of the elastic member 163 can be set according to specific performance parameters such as the air pressure of the fan system and the flow. Thus, it is determined, according to the air volume, whether the opening is to be closed, to maintain the low noise of the fan. In this embodiment, the elastic member 163 is a spring, the first end and the second end of the elastic member 163 respectively resist against the top of the corresponding connecting arm 161 and the inner wall 11 above the elastic member 163. the volute tongue 1 has a resisting plane 114 arranged perpendicularly to an axial direction of the spring and is formed on the inner wall above the elastic member 163, and the second end of the elastic member 163 rests against the resisting plane. a recess 1611 for receiving the first end of the spring is formed on the top surface of each connecting arm 161.
When in use of the volute structure in this embodiment, when the flow of the fan is small and the noise is low, the opening 1111 is closed by the air-guiding block 100; and, when the flow of the fan is large, the backflow of gas at the volute tongue 1 is increased, and the gas flow impacts the air-guiding block 100 to overcome the elasticity of the elastic member 163 and then float upward, so as to open the opening 1111. In this case, part of gas enters the air-guiding chamber 15 through the opening 1111. The part of gas entering the air-guiding chamber 15 is directly accelerated by the long and narrow air-guiding passage 14 and then discharged from the air outlet 40; and, the other part of gas enters the first chamber 170 through the through holes 130 on the baffle 130. At this time, a noise signal acquired by the sound collector 5 is transmitted to the controller, and the controller calculates the required noise-reduced audio signal according to the noise signal and controls the speaker 6 to play the corresponding reduced noise, so that the noise reduction is realized. With such a structure, the noise is reduced in an active noise reduction manner, and the secondary discharge of the backflow gas is realized, so that the gas backflow is reduced and the vortex is eliminated. Accordingly, the fan noise is reduced and the fan efficiency is improved.
Number | Date | Country | Kind |
---|---|---|---|
201810418925.6 | May 2018 | CN | national |
Number | Name | Date | Kind |
---|---|---|---|
2001522 | Thomas | May 1935 | A |
2160666 | McMahan | May 1939 | A |
2171342 | McMahan | Aug 1939 | A |
3398882 | Zenkner | Aug 1968 | A |
3522994 | Zenkner | Aug 1970 | A |
3684396 | Ball | Aug 1972 | A |
3695775 | Zenkner | Oct 1972 | A |
6039532 | McConnell | Mar 2000 | A |
6049615 | Chou | Apr 2000 | A |
6379110 | McCormick | Apr 2002 | B1 |
6935835 | Della Mora | Aug 2005 | B2 |
9380382 | Hopkins | Jun 2016 | B2 |
10415601 | Thawani | Sep 2019 | B2 |
20050276684 | Huang | Dec 2005 | A1 |
20100028134 | Slapak | Feb 2010 | A1 |
20190287510 | Goto | Sep 2019 | A1 |
Number | Date | Country |
---|---|---|
105526193 | Apr 2016 | CN |
108240353 | Jul 2018 | CN |
108240357 | Jul 2018 | CN |
110273861 | Sep 2019 | CN |
110439862 | Nov 2019 | CN |
2030837 | Dec 1971 | DE |
2210866 | Sep 1973 | DE |
2545036 | Apr 1975 | DE |
19823575 | Dec 1999 | DE |
10029546 | Dec 2001 | DE |
2856442 | Dec 2004 | FR |
1560117 | Jan 1980 | GB |
05312197 | Oct 2013 | JP |
WO-8103201 | Nov 1981 | WO |
WO-9302445 | Feb 1993 | WO |
Entry |
---|
Li et al. CN 105526193 English Machine Translation (Year: 2016). |
Yuan et al. CN 108240357 English Machine Translation (Year: 2018). |
Number | Date | Country | |
---|---|---|---|
20190338784 A1 | Nov 2019 | US |